MORPHO-FUNCTIONAL CHARACTERISTIC OF THE LUMBAR AREA OF THE HUMAN VERTEBRAL COLUMN IN THE INDIVIDUALS WITH VARIOUS DEGREES OF LUMBAR LORDOSIS (ON THE BASIS OF THREE-DIMENSIONAL COMPUTER MODELING)



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详细

This investigation was aimed at the evaluation of the borders of individual variability of the human lumbar spine lordosis. 224 nuclear magnetic tomograms of persons of mature age were analyzed using morphometric, statistical methods, method of three-dimensional (3D) computer modeling and finite-element analysis. During the investigation, a hardware-software complex for morphometric research was created together with the new method of development of 3D computer models of the lumbar spine. The application of 3D modeling allowed to extend the knowledge of human spine biomechanics. Tensions and deformations were calculated in all lumbar vertebrae and intervertebral disks on the basis of spine 3D models developed. Finite-element analysis proved that a normal angle of lumbar lordosis was optimal for the transmission of the adequate compression loads, while the extreme forms of individual variability (high degrees of hyper- and hypolordosis), by changing the geometry of the vertebral column, result in the decrease of the functionality of this system.

作者简介

V KOVESHNIKOV

Department of Anatomy, Lugansk State Medical University, Ukraine

Department of Anatomy, Lugansk State Medical University, Ukraine

V MAVRICH

Department of Anatomy, Lugansk State Medical University, Ukraine

Email: mavrych@mail.ru
Department of Anatomy, Lugansk State Medical University, Ukraine

Ye BOLGOVA

Department of Anatomy, Lugansk State Medical University, Ukraine

Department of Anatomy, Lugansk State Medical University, Ukraine

参考

  1. Еременко С.Ю. Методы конечных элементов в механике деформируемых тел. Харьков, Основа, 1991.
  2. Канзюба А.И.. Филиппенко В.А. Конечно-элементное моделирование остеосинтеза при переломах вертлужной впадины. Травма, 2003, т. 4, № 4, с. 417-423.
  3. Маврич В.В. Біомеханічні властивості різних зон тіл поперекових хребців людини на горизонтальних розтинах. Український медичний альманах, 2004, т. 7, № 2, с. 108- 110.
  4. Норри Д. и Де Фри Ж. Введение в метод конечных элементов. М., Мир, 1981
  5. Радченко В.А., Шимон В.М., Ткачук Н.А. и Шманько А.П. Конечно-элементные модели для определения жесткости и прочности имплантатов из гидроксилапатитной керамики. Ортопед. травматол. 2002, № 3, с. 60-64.
  6. Polikeit A., Ferguson S.J., Nolte L.P. and Tracy E.O. Factors influencing stresses in the lumbar spine after the incertion of intervertebral cages: finite element analysis. Eur. Spine J. 2003, v. 12, p. 413-420.
  7. Hancon P., Magnusson S.P. and Simonsen E.B. Differences in Sacral angulation and lumbosacral curvature in black and white young men and women. Acta Anat., 1998, v. 162, p. 226-231.
  8. Kim H.S. and Al-Hassani S.T. A morphological model of vertebral trabecular bone. J. Biomech., 2002, v. 35, № 8, p. 1101-1114.
  9. Mitulescu A., Skalli W. and Mitton D. Three-dimensional surface rendering reconstruction of scoliotic vertebrae using a non stereo-corresponding points technique. Eur. Spine J., 2002, v. 11, p. 344-352.
  10. Richter M., Wilke H.J. and Kluger P. Biomechanical evaluation of a new modular rod-screw implant system for posterior instrumentation of the occipito-cervical spine: invitro comparison with two established implant systems. Eur. Spine J., 2000, v. 9, p. 417-425.
  11. Zander T., Rohlman A., Klocner C. and Bergman G. Influence of graded faceectomy and laminectomy on spinal biomechanics. Eur. Spine J., 2003, v. 12, p. 427-434.

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